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CFI-rs7356506 polymorphisms associated with Vogt-Koyanagi-Harada syndrome
Ma-Li Dai1, Xiu-Feng Huang1, Qing-Feng Wang1
1The Eye Hospital of Wenzhou Medical University, State Key Laboratory Cultivation Base and Key Laboratory of Vision Science, Ministry of Health, Wenzhou 325027, China.
Insights
Genetic variations in complement factor I (CFI) are not directly linked to Vogt-Koyanagi-Harada (VKH) syndrome. However, specific CFI polymorphisms show a trend towards association with recurrent VKH and complicated cataracts.
Area of Science:
- Immunogenetics
- Ophthalmology
Background:
- Complement factor I (CFI) is crucial in regulating complement activation.
- CFI influences the pathogenesis of various inflammatory conditions, including uveitis.
Purpose of the Study:
- To investigate the association between CFI genetic polymorphisms and Vogt-Koyanagi-Harada (VKH) syndrome.
- To explore potential links between CFI-rs7356506 and VKH, considering disease recurrence, cataract complications, and steroid sensitivity.
Main Methods:
- Genotyping of CFI-rs7356506 polymorphisms in 100 VKH patients and 300 healthy controls.
- Analysis of allele and genotype frequencies using chi-squared tests.
- Stratified analyses based on recurrent, complicated cataract, and steroid-sensitive statuses.
Main Results:
- No significant overall association was found between CFI-rs7356506 and VKH syndrome.
- A significant decrease in G allele and GG homozygosity frequencies was observed in patients with recurrent VKH and complicated cataracts.
- No significant association was detected for steroid-sensitive VKH patients.
Conclusions:
- CFI polymorphisms do not show a significant direct association with VKH syndrome.
- A trend suggests CFI-rs7356506 may be associated with VKH, particularly concerning recurrent disease and complicated cataracts.
- Steroid sensitivity status did not appear to be associated with CFI-rs7356506 in VKH patients.
Purpose:
Complement factor I (CFI) plays an important role in complement activation pathways and is known to affect the development of uveitis. The present study was performed to investigate the existence of an association between CFI genetic polymorphisms and Vogt-Koyanagi-Harada (VKH) syndrome.
Methods:
A total of 100 patients diagnosed with VKH syndrome and 300 healthy controls were recruited for the study. Two milliliters of peripheral blood were collected in a sterile anticoagulative tube. CFI-rs7356506 polymorphisms were genotyped using Sequenom MassARRAY technology. Allele and genotype frequencies were compared between patients and controls using a χ(2) test. The analyses were stratified for recurrent status, complicated cataract status, and steroid-sensitive status.
Results:
No significant association was found between CFI-rs7356506 polymorphisms and VKH syndrome. However, patients with recurrent VKH syndrome had lower frequencies of the G allele and GG homozygosity in CFI-rs7356506 when compared to the controls (p=0.016, odds ratio [OR]=0.429, 95% confidence interval [CI]=0.212-0.871; p=0.014, OR=0.364, 95% CI=0.158-0.837, respectively). Furthermore, there were significant decreases in the frequencies of the G allele and GG homozygosity in CFI-rs7356506 in patients with VKH syndrome with complicated cataract compared to the controls (p<0.001, OR=0.357, 95% CI=0.197-0.648; p<0.001, OR=0.273, 95% CI=0.135-0.551, respectively). Nevertheless, no significant association with patients with VKH syndrome in steroid-sensitive statuses was detected for CFI-rs7356506 polymorphisms.
Conclusions:
Our results indicate that CFI polymorphisms are not significantly associated with VKH syndrome; nevertheless, we identified a trend for the association of CFI-7356506 with VKH syndrome that depends on the recurrent status and the complicated cataract status but not on the steroid-sensitive status.
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